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Computational analysis of dengue virus envelope protein (E) reveals an epitope with flavivirus immunodiagnostic potential in peptide microarrays

Academic Article
Publication Date:
2019
abstract:
The mosquito-borne viral disease caused by the Dengue virus is an expanding global threat. Diagnosis in low-resource-settings and epidemiological surveillance urgently requires new immunoprobes for serological tests. Structure-based epitope prediction is an effcient method to design diagnostic peptidic probes able to reveal specific antibodies elicited in response to infections in patients' sera. In this study, we focused on the Dengue viral envelope protein (E); computational analyses ranging from extensive Molecular Dynamics (MD) simulations and energy-decomposition-based prediction of potentially immunoreactive regions identified putative epitope sequences. Interestingly, one such epitope showed internal dynamic and energetic properties markedly different from those of other predicted sequences. The epitope was thus synthesized as a linear peptide, modified for chemoselective immobilization on microarrays and used in a serological assay to discriminate Dengue-infected individuals from healthy controls. The synthetic epitope probe showed a diagnostic performance comparable to that of the full antigen in terms of specificity and sensitivity. Given the high level of sequence identity among different flaviviruses, the epitope was immune-reactive towards Zika-infected sera as well. The results are discussed in the context of the quest for new possible structure-dynamics-based rules for the prediction of the immunoreactivity of selected antigenic regions with potential pan-flavivirus immunodiagnostic capacity.
Iris type:
01.01 Articolo in rivista
Keywords:
epitope microarray peptide computational analysis
List of contributors:
D'Annessa, Ilda; Romanato, Alessandro; Brambilla, Dario; Colombo, Giorgio; Fassi, ENRICO MARIO ALESSANDRO; Odinolfi, MARIA TERESA; Cretich, Marina; Damin, Francesco; Gori, Alessandro; Bergamaschi, Greta; Chiari, Marcella
Authors of the University:
BERGAMASCHI GRETA
BRAMBILLA DARIO
CRETICH MARINA
DAMIN FRANCESCO
GORI ALESSANDRO
Handle:
https://iris.cnr.it/handle/20.500.14243/379658
Published in:
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (PRINT)
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